Single/Dual-Polarized Infrared Rectenna for Solar Energy Harvesting

Single and dual linearly-polarized receiving mode nanoantennas are designed for solar energy harvesting at 28.3 THz. The infrared rectennas are used to harvest the solar energy and converting it to electrical energy.  The proposed infrared rectenna is a thin dipole made of gold and printed on a sil...

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Main Authors: S. H. Zainud-Deen, N. A. Eltresy, H. A. Malhat, K. H. Awadalla
Format: Article
Language:English
Published: Advanced Electromagnetics 2016-05-01
Series:Advanced Electromagnetics
Subjects:
Online Access:https://aemjournal.org/index.php/AEM/article/view/327
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spelling doaj-53d79886d182412e8babbccacee4a31b2020-11-24T22:18:41ZengAdvanced ElectromagneticsAdvanced Electromagnetics2119-02752016-05-015210.7716/aem.v5i2.327327Single/Dual-Polarized Infrared Rectenna for Solar Energy HarvestingS. H. Zainud-Deen0N. A. Eltresy1H. A. MalhatK. H. Awadalla2Faculty of Electronic Engineering- Minoufiya universityFaculty of Electronic Engineering- Minoufiya universityFaculty of Electronic Engineering- Minoufiya university Single and dual linearly-polarized receiving mode nanoantennas are designed for solar energy harvesting at 28.3 THz. The infrared rectennas are used to harvest the solar energy and converting it to electrical energy.  The proposed infrared rectenna is a thin dipole made of gold and printed on a silicon dioxide substrate. Different shapes of the dipole arms have been investigated for maximum collected energy. The two poles of the dipole have been determined in a rectangular, circular and rhombus shapes. The rectenna dipole is used to concentrate the electromagnetic energy into a small localized area at the inner tips of the gap between the dipole arms. The dimensions of the different dipole shapes are optimized for maximum near electric field intensity at a frequency of 28.3 THz. A Metal Insulator Metal (MIM) diode is incorporated with the nanoantenna dipole to rectify the received energy. The receiving efficiency of the solar energy collector with integrated MIM diode has been investigated. A dual-polarized, four arms, rhombus shaped nanoantenna dipole for solar energy harvesting has been designed and optimized for 28.3 THz applications. https://aemjournal.org/index.php/AEM/article/view/327nanoantennasolar energyMIM diodedual-polarization
collection DOAJ
language English
format Article
sources DOAJ
author S. H. Zainud-Deen
N. A. Eltresy
H. A. Malhat
K. H. Awadalla
spellingShingle S. H. Zainud-Deen
N. A. Eltresy
H. A. Malhat
K. H. Awadalla
Single/Dual-Polarized Infrared Rectenna for Solar Energy Harvesting
Advanced Electromagnetics
nanoantenna
solar energy
MIM diode
dual-polarization
author_facet S. H. Zainud-Deen
N. A. Eltresy
H. A. Malhat
K. H. Awadalla
author_sort S. H. Zainud-Deen
title Single/Dual-Polarized Infrared Rectenna for Solar Energy Harvesting
title_short Single/Dual-Polarized Infrared Rectenna for Solar Energy Harvesting
title_full Single/Dual-Polarized Infrared Rectenna for Solar Energy Harvesting
title_fullStr Single/Dual-Polarized Infrared Rectenna for Solar Energy Harvesting
title_full_unstemmed Single/Dual-Polarized Infrared Rectenna for Solar Energy Harvesting
title_sort single/dual-polarized infrared rectenna for solar energy harvesting
publisher Advanced Electromagnetics
series Advanced Electromagnetics
issn 2119-0275
publishDate 2016-05-01
description Single and dual linearly-polarized receiving mode nanoantennas are designed for solar energy harvesting at 28.3 THz. The infrared rectennas are used to harvest the solar energy and converting it to electrical energy.  The proposed infrared rectenna is a thin dipole made of gold and printed on a silicon dioxide substrate. Different shapes of the dipole arms have been investigated for maximum collected energy. The two poles of the dipole have been determined in a rectangular, circular and rhombus shapes. The rectenna dipole is used to concentrate the electromagnetic energy into a small localized area at the inner tips of the gap between the dipole arms. The dimensions of the different dipole shapes are optimized for maximum near electric field intensity at a frequency of 28.3 THz. A Metal Insulator Metal (MIM) diode is incorporated with the nanoantenna dipole to rectify the received energy. The receiving efficiency of the solar energy collector with integrated MIM diode has been investigated. A dual-polarized, four arms, rhombus shaped nanoantenna dipole for solar energy harvesting has been designed and optimized for 28.3 THz applications.
topic nanoantenna
solar energy
MIM diode
dual-polarization
url https://aemjournal.org/index.php/AEM/article/view/327
work_keys_str_mv AT shzainuddeen singledualpolarizedinfraredrectennaforsolarenergyharvesting
AT naeltresy singledualpolarizedinfraredrectennaforsolarenergyharvesting
AT hamalhat singledualpolarizedinfraredrectennaforsolarenergyharvesting
AT khawadalla singledualpolarizedinfraredrectennaforsolarenergyharvesting
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